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Impedance Spectroscopy with Variable Voltages and Illuminations to Reveal Recombination Routes of Free Carriers in Perovskite Solar Cells

机译:具有可变电压和照明的阻抗谱揭示了钙钛矿太阳能电池中自由载流子的重组途径

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The voltage (V)- and light power (P)-dependencies of electrochemical impedance spectroscopy (EIS) curves of perovskite solar cells (PSCs) are investigated over the entire (V, P) space rather than limited to short circuit or open circuit conditions. Employing a modified Randles circuit, we successfully fitted the EIS results. From the behaviors of the fitting parameters in the (V, P) space, we conclude that the dynamics inside PSCs consist of two parts, 1) the migration of mobile ions/vacancies and their capturing the free carriers at the boundary and 2) a classical diode involving the migration and recombination of free carriers. We further found that the mobile ion density inside the perovskite layer is proportional to light power, which could explain the reciprocal power-dependence of the amplitude of the slower EIS feature and the lifetime and amplitude of the faster one.
机译:钙钛矿型太阳能电池(PSC)的电化学阻抗谱(EIS)曲线的电压(V)和光功率(P)依赖性在整个(V,P)空间上进行了研究,而不仅限于短路或开路条件。使用改进的Randles电路,我们成功地拟合了EIS结果。从(V,P)空间中拟合参数的行为,我们得出结论,PSC内部的动力学包括两个部分:1)移动离子/空位的迁移及其在边界处捕获自由载流子,以及2)a经典二极管涉及自由载流子的迁移和重组。我们进一步发现,钙钛矿层内部的移动离子密度与光功率成正比,这可以解释较慢的EIS特征的幅度与较快的EIS特征的寿命和幅度的倒数功率相关性。

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